AASHTO T 256-2001 Standard Method of Test for Pavement Deflection Measurements《路面弯沉的标准测试方法》.pdf
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1、Standard Method of Test for Pavement Deflection Measurements AASHTO Designation: T 256-01 (2016) Release: Group 1 (April 2016) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-5a T 256-1 AASHTO Standard Method of Te
2、st for Pavement Deflection Measurements AASHTO Designation: T 256-01 (2016) Release: Group 1 (April 2016) 1. SCOPE 1.1. This test method provides standards for measuring pavement surface deflections, directly under, or at locations radially outward (offset) from a known static, steady-state, or impu
3、lse load. Deflections are measured with sensors that monitor the vertical movement of a pavement surface due to the load. This test method describes procedures for the deflection measurement using various deflection testing devices and provides the general information that should be obtained regardl
4、ess of the type of testing device used. 1.2. This test method is applicable for deflection measurements performed on flexible asphalt concrete (AC), rigid portland cement concrete (PCC), or composite (AC/PCC) pavements. Rigid pavements may be plain, jointed, jointed reinforced, or continuously reinf
5、orced or fractured concrete. 1.3. The values stated in SI units are to be regarded as standard. The U.S. Customary system of units given in parentheses is for information purposes only. 1.4. This standard does not purport to address the safety concerns, if any, associated with its use. It is the res
6、ponsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: R 32, Calibrating the Load Cell and Deflection Sensors for a Falling Weight Deflectomet
7、er R 33, Calibrating the Reference Load Cell Used for Reference Calibrations for a Falling Weight Deflectometer 2.2. ASTM Standard: STP1026, Nondestructive Testing of Pavements and Backcalculation of Moduli 2.3. Other Documents: FHWA-HRT-07-040, FWD Calibration Center and Operational Improvements: R
8、edevelopment of the Calibration Protocol and Equipment FHWA-RD-98-085, Temperature Predictions and Adjustment Factors for Asphalt Pavements SHRP-P-661, Manual for FWD Testing in the Long-Term Pavement Performance Program 3. TERMINOLOGY 3.1. Definitions of Terms Specific to This Standard: 2016 by the
9、 American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-5a T 256-2 AASHTO 3.1.1. deflection sensorelectronic device(s) capable of measuring the relative vertical movements of a pavement surface and mounted in such a ma
10、nner as to minimize angular rotation with respect to its measuring plane at the expected movement. Such devices may include seismometers, velocity transducers, or accelerometers. 3.1.2. load cellcapable of accurately measuring the load that is applied perpendicular to the loading plate and is placed
11、 in a position to minimize the mass between the load cell and the pavement. The load cell shall be positioned in such a way that it does not restrict the ability to obtain deflection measurements under the center of the load plate. The load cell shall be water resistant, and shall be resistant to me
12、chanical shocks from road impacts during testing or traveling. 3.1.3. loading platecapable of an even distribution of the load over the pavement surface. Loading plates may be circular in shape (or rectangular in some cases), one piece or segmented, for measurements on conventional roads and airfiel
13、ds or similar stiff pavements. The plate shall be suitably constructed to allow pavement surface deflection measurements at the center of the plate. 3.1.4. deflection basinthe idealized bowl shape of the deformed pavement surface due to a specified load as depicted from the peak measurements of a se
14、ries of deflection sensors placed at radial offsets from the center of the loading plate. 3.1.5. deflection basin testa test with deflection sensors placed at various radial offsets from the center of the loading plate. The test is used to record the shape of the deflection basin resulting from an a
15、pplied load. Information from this test can be used to estimate material properties for a given pavement structure. 3.1.6. load transfer testa test, usually on PCC pavement, with deflection sensors on both sides of a transverse or longitudinal break in the pavement. The test is used to determine the
16、 ability of the pavement to transfer load from one side of the break to the other. Also, the load-deflection data can be used to predict the existence of voids under the pavement. 3.1.7. test locationthe point at which the center of the applied load(s) is located. 4. SUMMARY OF TEST METHOD AND LIMIT
17、ATIONS 4.1. This test method consists of standards for measuring pavement surface deflections directly under and/or at appropriate offset locations from the load center. Each nondestructive testing (NDT) device is operated according to the standard operating procedure applicable to the device. 4.2.
18、This test method includes general descriptions of the various types of static and semicontinuous deflection testing devices, and procedures for deflection measurement corresponding to each testing device. 4.3. Standards for collection of general information, such as test setup, ambient temperature,
19、pavement temperature, equipment calibration, number of tests, and test locations, pertain to all devices. 5. SIGNIFICANCE AND USE 5.1. NDT measurement of pavement surface deflections provides information that can be used for the structural evaluation of new or in-service pavements. These deflection
20、measurements may be used to determine the following pavement characteristics: 5.1.1. Modulus of each layer; 2016 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-5a T 256-3 AASHTO 5.1.2. Overall stiffness
21、of the pavement system; 5.1.3. Load transfer efficiency of PCC pavement joints; 5.1.4. Modulus of subgrade reaction; and 5.1.5. Effective thickness, structural number, or soil support value. 5.2. These parameters may be used for the analysis and design of reconstructed and rehabilitated flexible and
22、 rigid pavements, pavement structural adequacy assessment including joint efficiency of PCC pavement, void detection in PCC pavements, research, and/or network structural inventory purposes. 6. APPARATUS 6.1. The apparatus used in this test method shall be one of the deflection measuring devices des
23、cribed in Section 6.2 and shall consist of some type of probe or surface contact sensor(s) to measure vertical pavement movements or deformations when subjected to a given load. 6.2. Deflection Measuring Devices: 6.2.1. Noncontinuous Static Loading Device1that operates on a single lever-arm principl
24、e. This device should have a minimum 2.5-m (8.2-ft) long probe, and the extension of the probe shall depress a dial gauge or electronic sensor that measures maximum pavement surface deflection with a resolution of 0.025 mm (0.001 in.) or better. The vehicle used to carry the static deflection device
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